说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 热强铝合金
1)  elevated-temperature Al alloy
热强铝合金
2)  high-strength heat-resistant aluminum alloy
高强耐热铝合金
3)  high temperature cast aluminium alloy
热强铸造铝合金
4)  high strength aluminum alloy
高强铝合金
1.
Effect of heat input on microstructure and mechanical properties of the high strength aluminum alloy welds;
焊接热输入对高强铝合金接头组织和性能的影响
2.
Effects of shielding gas on microstructure and number of gas pore in high strength aluminum alloys weld;
保护气体对高强铝合金的焊缝组织及气孔敏感性的影响
3.
Effect of multi-enhanced treatment on microstructure and mechanical properties of high strength aluminum alloy;
复合强韧化对高强铝合金组织和性能的影响
5)  high-strength aluminum alloy
高强铝合金
1.
Effect of welding speed on microstructure and mechanical property of high-strength aluminum alloy friction stir weld;
焊接速度对高强铝合金搅拌摩擦焊接头组织及力学性能的影响
2.
Quantitative analysis and study on microstructure of Al-Zn-Mg-Cu high-strength aluminum alloy;
Al-Zn-Mg-Cu系高强铝合金显微组织的定量分析
3.
Finite element simulation of the effects of friction on the equal channel angular pressing for high-strength aluminum alloy;
摩擦条件对高强铝合金ECAP变形作用的有限元模拟
6)  high strength aluminum alloys
高强铝合金
1.
Technical Study on Electromagnetic Casting and Microalloy of High Strength Aluminum Alloys;
高强铝合金微合金化与电磁成型技术的研究
2.
This paper combines within the characteristics and problems of welding of the high strength aluminum alloys,introduces several advanced thickness plate aluminum alloy welding techniques and methods:friction stir welding,tandem MIG welding,laser-arc hybrid welding.
结合高强铝合金焊接的特点、难点,介绍了几种目前国际上焊接高强厚板铝合金的新工艺,新方法——搅拌摩擦焊、双丝MIG焊、激光-电弧焊;与传统电弧焊相比,它们在厚板高强铝合金焊接方面更具优越性。
3.
The relationship between Zr content and mechanical properties of high strength aluminum alloys was examined, and the strengthening values of several factors were calculated.
研究了高强铝合金的力学性能与Zr含量的关系 ,计算了合金的各种强化因素值。
补充资料:热强铸造铝合金
分子式:
CAS号:

性质:用于300~400℃温度下工作的铸造铝合金。工业上使用的热强铸造铝合金分别属于Al-Cu系和Al-RE系,主要有:(1)Al-Cu-Mn-Ti合金,最高使用温度300℃;(2)Al-Cu-Ni-Mn-Co-Sb-Ti-Zr合金,最高使用温度350℃;(3)Al-RE-Si-Mn-Ni-Mg-Zr合金,最高使用温度可达400℃,在400℃下的持久强度为39MPa,蠕变强度59MPa,但不能固熔强化,室温力学性能低,特别是室温塑性差。铸造工艺性能良好。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条